Gleim A V, Egorov V I, Nazarov Yu V, Smirnov S V, Chistyakov V V, Bannik O I, Anisimov A A, Kynev S M, Ivanova A E, Collins R J, Kozlov S A, Buller G S
Opt Express. 2016 Feb 8;24(3):2619-33. doi: 10.1364/OE.24.002619.
A quantum key distribution system based on the subcarrier wave modulation method has been demonstrated which employs the BB84 protocol with a strong reference to generate secure bits at a rate of 16.5 kbit/s with an error of 0.5% over an optical channel of 10 dB loss, and 18 bits/s with an error of 0.75% over 25 dB of channel loss. To the best of our knowledge, these results represent the highest channel loss reported for secure quantum key distribution using the subcarrier wave approach. A passive unidirectional scheme has been used to compensate for the polarization dependence of the phase modulators in the receiver module, which resulted in a high visibility of 98.8%. The system is thus fully insensitive to polarization fluctuations and robust to environmental changes, making the approach promising for use in optical telecommunication networks. Further improvements in secure key rate and transmission distance can be achieved by implementing the decoy states protocol or by optimizing the mean photon number used in line with experimental parameters.
已演示了一种基于副载波波调制方法的量子密钥分发系统,该系统采用BB84协议,并以强参考来生成安全比特,在10 dB损耗的光信道上,生成速率为16.5 kbit/s且误差为0.5%的安全比特;在25 dB信道损耗下,生成速率为18 bit/s且误差为0.75%的安全比特。据我们所知,这些结果代表了使用副载波波方法进行安全量子密钥分发所报告的最高信道损耗。已采用一种无源单向方案来补偿接收器模块中相位调制器的偏振依赖性,其导致了98.8%的高可见度。该系统因此对偏振波动完全不敏感,并且对环境变化具有鲁棒性,使得该方法有望用于光通信网络。通过实施诱骗态协议或根据实验参数优化所使用的平均光子数,可以实现安全密钥速率和传输距离的进一步提高。